1 cascade two LTI systen x (t). System A wlnSystem 3byce) a) System A has the impulse response hlt)= ul) b) System B is charecteri ted by a diferentiol equation: d. dt Xuhen the input xle) = Ss aplied, the output 18 y)=o A)Find Hs) = 9(5)/x/s). Delermine poles ard zeros, Roc B) Jetermine the diflerantral equarion felatiny t) and ylA) Hs)= ReS3> -2 wH) +awlH) %3D

Introductory Circuit Analysis (13th Edition)
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1) cascade two LTI system
x (t)-
System A wlnSystem 3b yce)
a) System A has the impulse response hlt)= Eula)
b) System B is charecterited by a diferentiol equation:
d.
de
uhen the input xle) = ē St;s oplied, the output 18 yA=0
wH) +awlt)
A) Find Hs)= 93)//s). Determine po es ard
B) etermire the diferential equarion felating xt) and y(A)
Zeros, Roc
Hs)=1
Re S33>-2
%3D
S+2
SUA +y1s) = sw(5)+aW/s)
Transcribed Image Text:1) cascade two LTI system x (t)- System A wlnSystem 3b yce) a) System A has the impulse response hlt)= Eula) b) System B is charecterited by a diferentiol equation: d. de uhen the input xle) = ē St;s oplied, the output 18 yA=0 wH) +awlt) A) Find Hs)= 93)//s). Determine po es ard B) etermire the diferential equarion felating xt) and y(A) Zeros, Roc Hs)=1 Re S33>-2 %3D S+2 SUA +y1s) = sw(5)+aW/s)
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